Department of Chemistry and Applied Biosciences, ETH Zurich, Zurich, Switzerland.
Department of Biochemistry, University of Cambridge, Cambridge, UK.
J Am Soc Mass Spectrom. 2017 Sep;28(9):1863-1875. doi: 10.1007/s13361-017-1690-3. Epub 2017 Jun 7.
Native ESI-MS is increasingly used for quantitative analysis of biomolecular interactions. In such analyses, peak intensity ratios measured in mass spectra are treated as abundance ratios of the respective molecules in solution. While signal intensities of similar-size analytes, such as a protein and its complex with a small molecule, can be directly compared, significant distortions of the peak ratio due to unequal signal response of analytes impede the application of this approach for large oligomeric biomolecular complexes. We use a model system based on concatenated maltose binding protein units (MBPn, n = 1, 2, 3) to systematically study the behavior of protein mixtures in ESI-MS. The MBP concatamers differ from each other only by their mass while the chemical composition and other properties remain identical. We used native ESI-MS to analyze model mixtures of MBP oligomers, including equimolar mixtures of two proteins, as well as binary mixtures containing different fractions of the individual components. Pronounced deviation from a linear dependence of the signal intensity with concentration was observed for all binary mixtures investigated. While equimolar mixtures showed linear signal dependence at low concentrations, distinct ion suppression was observed above 20 μM. We systematically studied factors that are most often used in the literature to explain the origin of suppression effects. Implications of this effect for quantifying protein-protein binding affinity by native ESI-MS are discussed in general and demonstrated for an example of an anti-MBP antibody with its ligand, MBP. Graphical Abstract ᅟ.
天然电喷雾质谱(ESI-MS)越来越多地用于生物分子相互作用的定量分析。在这些分析中,质谱中测量的峰强度比被视为溶液中相应分子的丰度比。虽然类似大小的分析物(如蛋白质及其与小分子的复合物)的信号强度可以直接比较,但由于分析物的信号响应不均匀导致的峰比显著扭曲,阻碍了该方法在大型寡聚生物分子复合物中的应用。我们使用基于串联麦芽糖结合蛋白单元(MBPn,n = 1、2、3)的模型系统,系统地研究了 ESI-MS 中蛋白质混合物的行为。MBP 串联体彼此之间仅在质量上有所不同,而化学组成和其他性质保持相同。我们使用天然 ESI-MS 分析 MBP 低聚物的模型混合物,包括两种蛋白质的等摩尔混合物,以及包含单个成分不同分数的二元混合物。所有研究的二元混合物均表现出与信号强度与浓度之间的线性依赖性明显偏离。虽然等摩尔混合物在低浓度下表现出线性信号依赖性,但在 20 μM 以上观察到明显的离子抑制。我们系统地研究了文献中最常用来解释抑制效应起源的因素。该效应对通过天然 ESI-MS 定量测定蛋白质-蛋白质结合亲和力的影响进行了一般性讨论,并以抗 MBP 抗体与其配体 MBP 的示例进行了演示。